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The KC method: Numerical investigation of a new analysis method for reinforced soil walls

机译:KC方法:一种新的加筋土墙分析方法的数值研究

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Reinforced soil walls commonly include facing elements which affect the mechanical behavior of the system. However, the design procedures involved in the existing codes and manuals (e.g. FHWA, BS8006, AASHTO, etc.) do not consider the structural contribution of the facing to the wall stability. Recently, a new computer based method for the analysis of reinforced soil walls which takes into account the interaction between the facing and the soil reinforcement layers was presented [Klar A and Sas T. Rational approach for the analysis of segmental reinforced soil walls based on kinematic constraints. Geotextiles and Geomembranes 2009:27:332-340]. This method demands full compatibility between the reinforcement layers and the deforming wall, and is solved as an optimization problem on this constraint. This kinematic compatibility (KC) method entails several assumptions regarding the interaction between the three components of the system (soil, wall, and reinforcement). This paper compares the KC method to a more rigorous continuum analysis. Results show that the KC method is capable of replicating the behavior of the more rigorous system, with a good agreement on both the value of maximum tensile forces in the reinforcement and shear and bending moment distributions along the wall. The KC method has a certain advantage over continuum methods, such as finite element or finite difference, since it requires limited input data that can easily be obtained from field tests.
机译:加筋的土墙通常包括影响系统机械性能的饰面元件。但是,现有规范和手册(例如FHWA,BS8006,AASHTO等)中涉及的设计程序并未考虑饰面对墙体稳定性的结构影响。最近,提出了一种新的基于计算机的加筋土墙分析方法,该方法考虑了饰面层和土加筋层之间的相互作用[Klar A和SasT。基于运动学的分段加筋土墙分析的合理方法约束。土工布和土工膜2009:27:332-340]。该方法要求增强层和变形壁之间具有完全的兼容性,并作为此约束的优化问题而得到解决。这种运动学兼容性(KC)方法需要对系统的三个组成部分(土,墙和钢筋)之间的相互作用进行一些假设。本文将KC方法与更严格的连续谱分析进行了比较。结果表明,KC方法能够复制更严格的系统行为,在钢筋中的最大拉力值以及沿墙的剪切和弯矩分布方面均具有良好的一致性。 KC方法相对于连续方法(例如有限元或有限差分)具有一定优势,因为它需要可以从现场测试中轻松获得的有限输入数据。

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